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Spatial Analysis of 3′ Phosphoinositide Signaling in Living Fibroblasts III: Influence of Cell Morphology and Morphological Polarity

机译:活的成纤维细胞中3磷酸肌醇信号传导的空间分析III:细胞形态和形态极性的影响

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摘要

Activation of phosphoinositide (PI) 3-kinase is a required signaling pathway in fibroblast migration directed by platelet-derived growth factor. The pattern of 3′ PI lipids in the plasma membrane, integrating local PI 3-kinase activity as well as 3′ PI diffusion and turnover, influences the spatiotemporal regulation of the cytoskeleton. In fibroblasts stimulated uniformly with platelet-derived growth factor, visualized using total internal reflection fluorescence microscopy, we consistently observed localized regions with significantly higher or lower 3′ PI levels than adjacent regions (hot and cold spots, respectively). A typical cell contained multiple hot spots, coinciding with apparent leading edge structures, and at most one cold spot at the rear. Using a framework for finite-element modeling with actual cell contact area geometries, we find that although the 3′ PI pattern is affected by irregular contact area shape, cell morphology alone cannot explain the presence of hot or cold spots. Our results and analysis instead suggest that these regions reflect different local 3′ PI dynamics, specifically through a combination of mechanisms: enhanced PI 3-kinase activity, reduced 3′ PI turnover, and possibly slow/constrained 3′ PI diffusion. The morphological polarity of the cell may thus bias 3′ PI signaling to promote persistent migration in fibroblasts.
机译:磷酸肌醇(PI)3激酶的激活是成纤维细胞迁移过程中由血小板衍生的生长因子指导的必需信号通路。 3'PI脂质在质膜中的模式,整合局部PI 3-激酶活性以及3'PI扩散和更新,影响细胞骨架的时空调节。在使用血小板源性生长因子均匀刺激的成纤维细胞中,使用全内反射荧光显微镜观察,我们始终观察到局部区域的3'PI水平明显高于或低于邻近区域(分别为热点和冷点)。一个典型的电池包含多个热点,与明显的前缘结构相吻合,而后部最多有一个冷点。使用具有实际细胞接触区域几何形状的有限元建模框架,我们发现尽管3'PI模式受不规则接触区域形状影响,但仅细胞形态无法解释热点或冷点的存在。相反,我们的结果和分析表明,这些区域反映了不同的局部3'PI动态,特别是通过多种机制的组合:PI 3激酶活性增强,3'PI周转减少和可能的3'PI扩散缓慢/受约束。因此,细胞的形态极性可偏向3'PI信号,以促进成纤维细胞中的持续迁移。

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